TIA-559-1-1992 Single-Mode Fiber Optic System Transmission Design (Addendum 1 to TIA-559)《信号模式光纤系统传输设计-补遗1(19899) (r2002)》.pdf
《TIA-559-1-1992 Single-Mode Fiber Optic System Transmission Design (Addendum 1 to TIA-559)《信号模式光纤系统传输设计-补遗1(19899) (r2002)》.pdf》由会员分享,可在线阅读,更多相关《TIA-559-1-1992 Single-Mode Fiber Optic System Transmission Design (Addendum 1 to TIA-559)《信号模式光纤系统传输设计-补遗1(19899) (r2002)》.pdf(47页珍藏版)》请在麦多课文档分享上搜索。
1、 DOCUMENT Single-Mode Fiber Optic System Transmission Design Addendum 1 TIA-559-1 (Addendum No. 1 to TIA-559) Reaffirmed August 15,2002 OCTOBER 1992 1 TELECOMMUNICATIONS INDUSTRY ASSOCIATION Representing the Telecommunications Industry NOTICE TIA Engineering Standards and Publications are designed t
2、o serve the public interest through eliminating misunderstandings between manufacturers and purchasers, facilitating interchangeability and improvement of products, and assisting the purchaser in selecting and obtaining with minimum delay the proper product for their particular need. The existence o
3、f such Publications shall not in any respect preclude any member or non-member of TIA from manufacturing or selling products not conforming to such Publications. Neither shall the existence of such Documents preclude their voluntary use by non-TIA members, either domestically or internationally. TIA
4、 DOCUMENTS TIA Documents contain information deemed to be of technical value to the industry, and are published at the request of the originating Committee without necessarily following the rigorous public review and resolution of comments which is a procedural part of the development of a American
5、National Standard (ANS). TIA documents shall be reviewed on a five year cycle by the formulating Committee and a decision made on whether to reaffirm, revise, withdraw, or proceed to develop an American National Standard on this subject. Suggestions for revision should be directed to: Standards +-,
6、EIA TIA-559 89 m 3234600 0010258 1 = EIA/TIA-559 Page 3 Manufacturer Terminal Equipment identification System design application, e.g., Single-mode, Multimode Operating wavelength Output power level Source type Optical device temperature controller BRH Classification, e.g., Class I, Class II, etc. M
7、anufacturer product change designation, e.g. issue, revision. Cl&aUmume - The optical source type is characterized by identifying as a minimum: Type of laser Material composition of source: e.g., InGaAs Generic device structure: e.g., BFB. - The transmitter connector is the optical connector provide
8、d at the output of the transmitter that attaches to the transmitter pigtail. The transmitter connector description, as a minimum includes: Connector Manufacturer Connector Type (e.g., Biconic, FC, etc.) Connector Model Number Connector Classification (Multimode, Single-mode) Mating Connector Model N
9、umber (Multimode, Single-mode). r Pigtail - The identification of the transmitter pigtail shall include the following information (reference EIA-492): General fiber type Class of fiber Mode field diameter. 8 2.2.2 Transmission Parameters The system integrator should specify the following: al Wavehgh
10、 (A, no,n) - The nominal value of the transmitter central wavelength for the application under consideration. The supplier should specify the following: fl (A,)- The central wavelength identifies the wavelength, defined by a Peak Mode or Power Weighted measurement method, where the effective optical
11、 power resides. The procedure for determining the central wavelength is contained in P - 6. al Wav ( Armin, hrmax) - The minimum and maximum wavelength limits, respectively, of the total allowed range of transmitter central wavelengths caused by the combined worst case variations due to manufacturin
12、g, temperature, aging, and any other significant factors, as determined when operated under standard operating conditions ( hl mifil , A, mnxl) or extended operating conditions (hr ,in2, h, maxz). Power ( Pr) - The worst case minimum value of the optical power (dBm) coupled into the station cable (o
13、n the line side of the transmitter unit connector), specified as PT for standard operating conditions or P72 for extended operating conditions, and as measured utilizing the procedure contained in The worst case minimum value combines manufacturing variations with temperature and aging drifts in a w
14、orst case fashion. - EIA/TIA-559 Page 4 ODtm (OR,) - The maximum percent (%) of total reflected optical power that a transmitter can accommodate and maintain its stated performance. 2.3 Receiver Information 2.3 .I General Information ver Information - The unit providing the receiver function should
15、have a unique descriptor from which can be determined the following information by utilizing the appropriate documentation: Manufacturer Terminal Equipment identification System design application, e.g., Single-mode, Multimode Receiver performance specifications Detector type Optical device temperat
16、ure controller Manufacturer product change designation, e.g., issue, revision. - The optical detector type is characterized by identifying as a minimum: Type of device: e.g., PIN , APD Material composition of detector: e.g, Ge, Si. -ver C- - The receiver connector is the optical connector provided a
17、t the input to the receiver that attaches to the receiver pigtail. The receiver connector description, as a minimum includes: Connector Manufacturer Connector Type (Biconic, FC, etc.) Connector Model Number Connector Classification (Multimode, Single-mode) Mating Connector Model Number (Multimode, S
18、ingle-mode). (reference EIA-492) : General fiber type Class of fiber Mode field diameter (if single-mode). 2.3.2 Transmission Parameters The transmission parameters which should be specified for the receiver unit are the following: ( PR ) - The worst case value of the input optical power (dBm) to th
19、e receiver (on the line side of the receiver module connector), specified as PR for standard operating conditions or PR for extended operating conditions, that is necessary to achieve the manufacturer specified bit error ratio as measured utilizing the procedure contained in QFSTP -3, The receiver s
20、ensitivity value specified shall include the following performance degradations combined in a worst case fashion: - The identification of the receiver pigtail shall include the following information a) ,b) Manufacturing variations with temperature and aging drifts. Maximum transmitter power penalty
21、resulting from the use of a transmitter with a worst case extinction ratio (re) when operated under standard operating conditions ( PR ) or extended operating conditions ( PR ). Maximum transmitter power penalty resulting from the use of a transmitter with a worst case rise/fall time when operated u
22、nder standard operating conditions ( PR ) or extended operating conditions ( PR ). c) EIA TIA-559 89 = 3234600 OOLO260 T EIA/TIA-559 Page 5 The receiver sensitivity should not include power penalties associated with dispersion (pulse broadening) or reflection. These are specified separately by the p
23、arameters PD and Rp, respectively. (Po)- The maximum power penalty (dB) associated with the worst case increase in receiver input optical power level to account for the total pulse distortion due to Intersymbol Interference (ISI) and Mode Partition Noise (MPN) at the specific Bit Rate, BER, and Maxi
24、mum Transceiver Dispersion (DTR) specified by the manufacturer, when operated under standard operating conditions (PD 1) or extended operating conditions (PD2). The procedure for measuring dispersion power penalty is contained in BTP - 1Q Power Pcmky RP - The reflection power penalty is a measure of
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